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首页> 外文期刊>Journal of Environmental Management >Evaluation of distillery wastewater treatability in a customized photobioreactor using blue-green microalgae - Laboratory and outdoor study
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Evaluation of distillery wastewater treatability in a customized photobioreactor using blue-green microalgae - Laboratory and outdoor study

机译:使用蓝绿色微藻评估定制光生物反应器中蒸馏厂废水的可处理性-实验室和室外研究

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Treatability of anaerobically digested distillery wastewater is challenging because of its high pollution load of COD up to 40,000 ppm. This research investigates the possibilities of retrofitting the effluent treatment plant (ETP) of a distillery with microalgae treatment step. For this, at first the photobioreactors of capacity 50 L and 500 L were customized for the cultivation of Spirulina sp. under xenon lamp and sunlight. The reactor supported the maximum specific growth rate up to 0.42 +/- 0.03 d(-1) in the 50 L reactor at laboratory and 0.10 +/- 0.02 d(-1) in the 500 L reactor at the outdoor for Spirulina sp. The treatability of wastewater of COD 30,000 ppm-40,000 ppm was carried out in those reactors with the Spirulina sp. of culture volume fraction 0.8 and 0.93 under xenon lamp and sunlight respectively. The chemical oxygen demand and total dissolved solids reduction were 60-70% in both the volume fractions of the culture. Ion chromatography analysis indicated the reduction of major inorganic pollutants in the wastewater by the Spirulina sp. The algae were sustainable when the culture volume fraction was increased from 0.8 to 0.93. Thus, the phycoremediation was shown the significant pollution reduction in the wastewater. The addition of this step is valuable and it benefits the distillery by not only improving the quality of wastewater but also through the generation of algae biomass that would be appropriate for animal feed or biofuel application. However, the detail biochemical study is needed for the best use of algae biomass and the treatment could be checked for the long run sustainability.
机译:厌氧消化的酿酒废水的可处理性具有挑战性,因为其高污染负荷的COD高达40,000 ppm。这项研究调查了用微藻处理步骤改造酒厂废水处理厂(ETP)的可能性。为此,首先定制容量为50 L和500 L的光生物反应器用于螺旋藻的培养。在氙气灯和阳光下。在螺旋藻实验室中,该反应器在50 L反应器中支持的最大比生长速率高达0.42 +/- 0.03 d(-1),而在室外螺旋藻中则支持在500 L反应器中的0.10 +/- 0.02 d(-1)。在带有螺旋藻sp的那些反应器中进行了COD 30,000 ppm-40,000 ppm废水的可处理性。氙灯和日光下的培养物体积分数分别为0.8和0.93。在培养物的两个体积分数中,化学需氧量和总溶解固体减少量均为60-70%。离子色谱分析表明螺旋藻减少了废水中的主要无机污染物。当培养物体积分数从0.8增加到0.93时,藻类是可持续的。因此,phycoremediation被证明可以显着减少废水中的污染。该步骤的增加是有价值的,并且不仅通过改善废水的质量而且还通过产生适合于动物饲料或生物燃料的藻类生物质而使酿酒厂受益。但是,需要进行详细的生化研究才能充分利用藻类生物质,并且可以检查该处理方法的长期可持续性。

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